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Design of a Color Image Processing Algorithm Using On-line Arithmetic Modules

机译:在线算术模块的彩色图像处理算法设计

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A new class of nonlinear filters for color image processing was proposed by Lucchese and Mitra. This type of color filter processes the chromatic component of images encoded in the International Commission on Illumination (CIE) u'v' color space. Images processed by this filter do not show color shifts near edges between regions with different intensities. The filter uses linear convolution operations internally and is effective and efficient for denoising and regularizing color images. Image processing systems are computationally intensive and usually require a large amount of area in order to reach desirable levels of performance. The use of on-line arithmetic can decrease the area of the hardware implementation and still maintain a reasonable throughput. This work presents the design of the color filter as a network of on-line arithmetic modules. The network topology and some detail of each arithmetic module are provided. The final implementation targets FPGAs and it is compared in terms of area against an estimate of a conventional design. The throughput of this solution is capable of supporting real-time processing of common image formats.
机译:Lucchese和Mitra提出了一类用于彩色图像处理的新型非线性滤波器。这种类型的滤色器处理在国际照明委员会(CIE)u'v'颜色空间中编码的图像的色度分量。经此滤镜处理的图像在强度不同的区域之间的边缘附近未显示颜色偏移。该滤镜内部使用线性卷积运算,对于彩色图像的降噪和正则化非常有效。图像处理系统的计算量很大,通常需要大量的面积才能达到理想的性能水平。在线算法的使用可以减少硬件实现的面积,并且仍然保持合理的吞吐量。这项工作介绍了作为在线算术模块网络的彩色滤光片的设计。提供了网络拓扑和每个算术模块的一些详细信息。最终实现以FPGA为目标,并在面积上与常规设计的估计值进行比较。该解决方案的吞吐量能够支持常见图像格式的实时处理。

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